We know the VIC is used to charge the Water Fuel Cell Capacitor.
We know it has a primary, secondary, a set of chokes, and a diode, but how does it work?
The concept of the VIC
When no voltage is applied to the water molecule, no water will be split!
It should make sense to everyone here that in order to have the highest efficiency the applied voltage should be constant.
Stan Meyers VIC does exactly that, it provides a constant high voltage output, 100% duty cycle.
How it worksThe Blocking diode
When an inductors magnetic field collapses the current flow reverses, the blocking diode prevents this, keeping the capacitor charged continusously.
Stainless Steel 430 wire:Electrical Steel core:High inductance is needed to reduce the resonant frequency, the lower the resonant freq is, the smaller the changes in resonance will be (the dielectric changes continuously within the water capacitor.)
The use of the different wire sizes was to get the coils to have matching inductance, I have to thank H2OPOWER for he taught much about the VIC.
The drawing below shows a way to build the Injector VIC with only 1 choke. The VIC has 14 cavities, and the drawing shows only 2 pancaks coils per cavity, in reality there should be more.
This VIC is modeled after a typical ignition coil, see the following post to understand why:
Stan Meyers Injectors, VIC, and resonance"]URL="http://energeticforum.com/renewable-energy/4254-stan-meyers-injectors-vic-resonance.html"]http://energeticforum.com/renewable-energy/4254-stan-meyers-injectors-vic-resonance.html[/URL][/URL]

The drawing above shows one way the injector VIC could be built, but as I have learned the VIC is better with 2 chokes because of mutual inductance, see post # 4.
We know it has a primary, secondary, a set of chokes, and a diode, but how does it work?
The concept of the VIC
When no voltage is applied to the water molecule, no water will be split!
It should make sense to everyone here that in order to have the highest efficiency the applied voltage should be constant.
Stan Meyers VIC does exactly that, it provides a constant high voltage output, 100% duty cycle.
How it worksThe Blocking diode
When an inductors magnetic field collapses the current flow reverses, the blocking diode prevents this, keeping the capacitor charged continusously.
Stainless Steel 430 wire:Electrical Steel core:High inductance is needed to reduce the resonant frequency, the lower the resonant freq is, the smaller the changes in resonance will be (the dielectric changes continuously within the water capacitor.)
The use of the different wire sizes was to get the coils to have matching inductance, I have to thank H2OPOWER for he taught much about the VIC.
The drawing below shows a way to build the Injector VIC with only 1 choke. The VIC has 14 cavities, and the drawing shows only 2 pancaks coils per cavity, in reality there should be more.
This VIC is modeled after a typical ignition coil, see the following post to understand why:
Stan Meyers Injectors, VIC, and resonance"]URL="http://energeticforum.com/renewable-energy/4254-stan-meyers-injectors-vic-resonance.html"]http://energeticforum.com/renewable-energy/4254-stan-meyers-injectors-vic-resonance.html[/URL][/URL]

The drawing above shows one way the injector VIC could be built, but as I have learned the VIC is better with 2 chokes because of mutual inductance, see post # 4.

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